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April 12, 2026Physics Essays0 citations

Solar system measurements and the local Hubble tension

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LKLeslie A. King

Key Points

  • To investigate the existence of local expansion phenomena within the Solar System and the implications for the Hubble tension.
  • Conducted seven quantitative estimates of local expansion
  • Analyzed Hubble-Lemaître parameter in the context of local measurements
  • Compared values obtained from cosmic background radiation and type Ia supernovae
  • Local value of the Hubble parameter found to be (49 ± 11) (km/s)/Mpc
  • Significantly lower than cosmic background radiation estimate of (67.4 ± 0.5) (km/s)/Mpc
  • Suggests H0 might be scale-dependent, though the cause is unclear

Abstract

The existing astrophysical paradigm asserts that cosmological expansion does not operate on gravitationally bound bodies. However, there is now considerable evidence that such expansion does occur within the Solar System. Seven quantitative estimates of “local” expansion phenomena suggest that H 0 , the mean (±σ) current value of the Hubble‐Lemaître parameter, is (49 ± 11) (km/s)/Mpc. That is far lower than has been derived from analysis of the cosmic background radiation, i.e., H 0 = (67.4 ± 0.5) (km/s)/Mpc or the luminosity of type Ia supernovae, i.e., (73.04 ± 1.04) (km/s)/Mpc. Furthermore, there are several other situations within the Solar System where precise values are less readily obtained, but there is some suggestion that H 0 might also have a lower value. These findings, when considered alongside the large-scale “Hubble tension,” may support the suggestion that H 0 may be scale-dependent, although the physical origin of that effect is unclear.

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Cite This Study

Leslie A. King (2026) studied this question.

synapsesocial.com/papers/69db37b04fe01fead37c5c07https://doi.org/10.4006/0836-1398-39.1.049
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